Open Access
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volume 1 issue 4

Vibrational and electrochemical studies of pectin—a candidate towards environmental friendly lithium-ion battery development

Phillip M. Wu 1, 2
Ching Yi Chung 1, 3, 4
Yan Ruei Chen 1, 3, 4
Yu‐Hsuan Su 1, 3, 4
Kuei-Shu Chang-Liao 4
Po-Wei Chi 1
Tanmoy Paul 1
Yun-Ju Chen 1
Yeng Long Chen 1
Sea-Fue Wang 2
Pooja Badgujar 5
Bo-Nian Chen 5
Chia-Liang Cheng 5
Maw-Kuen Wu 1
Publication typeJournal Article
Publication date2022-07-25
scimago Q1
wos Q1
SJR1.198
CiteScore3.5
Impact factor3.8
ISSN27526542
Abstract

Pectin polymers are considered for lithium-ion battery electrodes. To understand the performance of pectin as an applied buffer layer, the electrical, magnetic, and optical properties of pectin films are investigated. This work describes a methodology for creating pectin films, including both pristine pectin and Fe-doped pectin, which are optically translucent, and explores their potential for lithium-ion battery application. The transmission response is found extended in optimally Fe-doped pectin, and prominent modes for cation bonding are identified. Fe doping enhances the conductivity observed in electrochemical impedance spectroscopy, and from the magnetic response of pectin evidence for Fe3+ is identified. The Li-ion half-cell prepared with pectin as binder for anode materials such as graphite shows stable charge capacity over long cycle life, and with slightly higher specific capacity compare with the cell prepared using polyvinylidene fluoride (PVDF) as binder. A novel enhanced charging specific capacity at a high C-rate is observed in cells with pectin binder, suggesting that within a certain rate (∼5 C), pectin has higher capacity at faster charge rates. The pectin system is found as a viable base material for organic–inorganic synthesis studies.

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GOST Copy
Wu P. M. et al. Vibrational and electrochemical studies of pectin—a candidate towards environmental friendly lithium-ion battery development // PNAS Nexus. 2022. Vol. 1. No. 4.
GOST all authors (up to 50) Copy
Wu P. M., Chung C. Y., Chen Y. R., Su Y., Chang-Liao K., Chi P., Paul T., Chen Y., Chen Y. L., Wang S., Badgujar P., Chen B., Cheng C., Wu M. Vibrational and electrochemical studies of pectin—a candidate towards environmental friendly lithium-ion battery development // PNAS Nexus. 2022. Vol. 1. No. 4.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1093/pnasnexus/pgac127
UR - https://doi.org/10.1093/pnasnexus/pgac127
TI - Vibrational and electrochemical studies of pectin—a candidate towards environmental friendly lithium-ion battery development
T2 - PNAS Nexus
AU - Wu, Phillip M.
AU - Chung, Ching Yi
AU - Chen, Yan Ruei
AU - Su, Yu‐Hsuan
AU - Chang-Liao, Kuei-Shu
AU - Chi, Po-Wei
AU - Paul, Tanmoy
AU - Chen, Yun-Ju
AU - Chen, Yeng Long
AU - Wang, Sea-Fue
AU - Badgujar, Pooja
AU - Chen, Bo-Nian
AU - Cheng, Chia-Liang
AU - Wu, Maw-Kuen
PY - 2022
DA - 2022/07/25
PB - Oxford University Press
IS - 4
VL - 1
PMID - 36714876
SN - 2752-6542
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2022_Wu,
author = {Phillip M. Wu and Ching Yi Chung and Yan Ruei Chen and Yu‐Hsuan Su and Kuei-Shu Chang-Liao and Po-Wei Chi and Tanmoy Paul and Yun-Ju Chen and Yeng Long Chen and Sea-Fue Wang and Pooja Badgujar and Bo-Nian Chen and Chia-Liang Cheng and Maw-Kuen Wu},
title = {Vibrational and electrochemical studies of pectin—a candidate towards environmental friendly lithium-ion battery development},
journal = {PNAS Nexus},
year = {2022},
volume = {1},
publisher = {Oxford University Press},
month = {jul},
url = {https://doi.org/10.1093/pnasnexus/pgac127},
number = {4},
doi = {10.1093/pnasnexus/pgac127}
}